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首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Theory of field attenuation in photon detection, with an application to resonance fluorescence
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Theory of field attenuation in photon detection, with an application to resonance fluorescence

机译:光子检测中的场衰减理论及其在共振荧光中的应用

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摘要

Detection of photons from electromagnetic radiation can be considered as the appearance of random events on the time axis. When an attenuator is placed in front of the detector, which attenuates the intensity by a factor of α, the statistical properties of the detected photons are altered. We show that simple relations exist between the statistical functions of the photons detected from the attenuated field and the same functions for the photons that would be detected from the unattenuated field. We also derive several recurrence relations for the statistical functions involving their dependence on the parameter α. For photon detection from resonance fluorescence, the parameter α appears naturally as the probability that an emitted photon is detected. In this case, there is no attenuator, but the parameter α appears in the same way. We show that the probability for the emission (α = 1) of n photons in a given time interval can easily be computed, and with the general theory we can then obtain the result for the detection of n photons (α < 1).
机译:来自电磁辐射的光子检测可以认为是时间轴上随机事件的出现。当将衰减器放置在检测器的前面,该衰减器将强度衰减系数α时,检测到的光子的统计特性将发生变化。我们表明,从衰减场中检测到的光子的统计函数与将从未衰减场中检测到的光子的相同函数之间存在简单的关系。我们还为统计函数导出了几个递归关系,涉及它们对参数α的依赖。为了从共振荧光检测光子,参数α自然地作为检测到发射光子的概率而出现。在这种情况下,没有衰减器,但是参数α以相同的方式出现。我们表明,可以很容易地计算出给定时间间隔内n个光子发射(α= 1)的概率,然后利用一般理论,我们可以获得n个光子(α<1)的检测结果。

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